The apparatus comprises: a base portion (1); inwardly extending radial arms (2) resiliently cantilevered from the base portion (1); disk-engaging means (3) at the inner ends of the arms (2) for releasably engaging the central hole of a disk (11) and supporting the center of the disk (11) away from the base portion (1). Each arm (2) has first pivot means (9) in the region where the arm (2) joins the base portion (1) and second pivot means (10) radially inward thereof. Depression of the disk-engaging means (3) towards the base portion (1) causes the inner ends of the arms (2) and the center of the disk (11), to be depressed towards the base portion (1), the arms (2) initially pivoting about the first pivot means (9) and subsequently pivoting about the second pivot means (10) until retention of the disk (11) by the disk-engaging means (3) is released. This enables the thickness of the apparatus to be reduced, e.g. to 4 mm or less. Due to the presence of the second pivot means (10), the periphery of the base portion (1) also tends to rise when the disk-engaging means (3) is depressed to help in ejecting the disk (11).
|
21. Apparatus for holding a compact disk having a central hole, the apparatus comprising: a base portion; at least one inwardly extending radial arm resiliently cantilevered from the base portion; disk-engaging means at the inner end of the at least one arm for releasably engaging the central hole of the disk, and the at least one arm having first pivot means in the region where it joins the base portion and second pivot means radially inward of the first pivot means, the thickness of the apparatus from the top of the disk-engaging means to the underside of the base portion being 4 mm or less.
19. Apparatus for holding a compact disk having a central hole, the apparatus comprising a base portion; at least two inwardly extending radial arms resiliently cantilevered from the base portion; and disk engaging means provided at the inner end of the arms for releasably engaging the central hole of the disk, whereby depression of the disk engaging means towards the base portion causes the inner ends of the arms, and at least a central portion of the disk to be depressed towards the base portion until retention of the disk by the disk-engaging means is released, and including means causing the base portion to flex and the radially outer portions thereof to be raised relative to a central area thereof upon further depression of the disk-engaging means, whereby said radially outer portions engage the periphery of the disk and assist in lifting the disk away from the disk engaging means.
23. Apparatus for holding a compact disk having a central hole, the apparatus comprising: a base portion; at least one inwardly extending radial arm resiliently cantilevered from the base portion; disk-engaging means at the inner end of the at least one arm for releasably engaging the central hole of the disk and supporting the center of the disk away from the base portion; the at least one arm having first pivot means in the region where it joins the base portion and second pivot means radially inward of the first pivot means; said second pivot means comprising a projection on the underside of the at least one arm; whereby depression of the disk-engaging means towards the base portion causes the inner end of the said at least one arm, and at least a central portion of the disk, to be depressed towards the base portion, the at least one radial arm intially pivoting about the first pivot means and subsequently pivoting about the second pivot means until inward movement of the disk-engaging means is sufficient to release retention of the disk by the disk-engaging means.
1. Apparatus for holding a compact disk having a central hole, the apparatus comprising: a base portion; disk-engaging means for releasably engaging the central hole of the disk and supporting the center of the disk away from the base portion; the disk-engaging means being provided with at least one projection for retaining the disk on the apparatus, and being provided at the radially inner end(s) of one or more arms, each of which is resiliently cantilevered from the base portion and extends radially inward therefrom to the disk-engaging means, and each arm having first pivot means in the region where it joins the base portion and second pivot means radially inward of the first pivot means between the first pivot means and the disk-engaging means; whereby depression of the disk-engaging means towards the base portion causes the radially inner end of each arm, and at least a central portion of the disk, to be depressed towards the base portion, the disk-engaging means intially pivoting about the first pivot means and subsequently pivoting about the second pivot means until radially inward movement of the projection(s) of the disk-engaging means is sufficient to release retention of the disk by the disk-engaging means.
2. Apparatus as claimed in
3. Apparatus as claimed in
4. Apparatus as claimed in
5. Apparatus as claimed in
6. Apparatus as claimed in
7. Apparatus as claimed un
8. Apparatus as claimed in
9. Apparatus as claimed in
10. Apparatus as claimed in
11. Apparatus as claimed in
12. Apparatus as claimed in
13. Apparatus as claimed in
14. Apparatus as claimed in
15. Apparatus as claimed in
16. Apparatus, as claimed in
17. Apparatus as claimed in
18. Apparatus as claimed in
20. Apparatus as claimed in
22. Apparatus as claimed in
|
This application is a continuation of prior PCT Application PCT/GB00/01001, filed Mar. 17, 2000.
This invention relates to apparatus for holding a compact disk.
The invention relates to further improvements of the apparatus described in WO-A-96/14636 and WO-A-97/41563. The disclosure of this prior art is hereby incorporated in the present specification. Such known apparatus comprises a base portion, inwardly extending radial arms resiliently cantilevered from the base portion and disk-engaging means at the inner ends of the arms for releasably engaging the central hole of the disk. The invention aims to improve upon the release action of the disk-engaging means and enable the thickness of the apparatus, from the upper surface of the disk-engaging means to the underside of the base portion, to be reduced.
According to the present invention, there is provided apparatus for holding a compact disk having a central hole, the apparatus comprising: a base portion; at least one inwardly extending radial arm resiliently cantilevered from the base portion; disk-engaging means at the inner end of the said at least one arm for releasably engaging the central hole of the disk and supporting the centre of the disk away from the base portion; the or each arm having first pivot means in the region where it joins the base portion and second pivot means radially inward of the first pivot means; the arrangement being such that depression of the disk-engaging means towards the base portion causes the inner end of the said at least one arm, and at least a central portion of the disk, to be depressed towards the base portion, the arm initially pivoting about the first pivot means and subsequently pivoting about the second pivot means until retention of the disk by the disk-engaging means is released.
According to a second aspect of the invention, there is provided apparatus for holding a compact disk having a central hole, the apparatus comprising a base portion; at least two inwardly extending radial arms resiliently cantilevered from the base portion; and disk engaging means provided at the inner end of the arms for releasably engaging the central hole of the disk and supporting the centre of the disk away from the base portion, the arrangement being such that depression of the disk engaging means towards the base portion causes the inner ends of the arms, and at least a central portion of the disk to be depressed towards the base portion until retention of the disk by the disk-engaging means is released, and the base portion to flex such that radially outer portions thereof are raised relative to a central area thereof so the radially outer portions engage the periphery of the disk and assist in lifting the disk away from the disk engaging means.
According to another aspect of the invention, there is provided apparatus for holding a compact disk having a central hole, the apparatus comprising: a base portion; at least one inwardly extending radial arm resiliently cantilevered from the base portion; and disk-engaging means at the inner end of the said at least one arm for releasably engaging the central hole of the disk, the arrangement being such that the thickness of the apparatus from the top of the disk-engaging means to the underside of the base portion is 4 mm or less.
Preferred and optional features of the invention will be apparent from the following description of specific embodiments and from the subsidiary claims of the specification.
It should be notes that references to movement towards the base portion as used herein are to be interpreted to include movement towards a plane defined by parts of the base portion, such as the plane of the surface 12 shown in the Figures.
The invention will now be further described, merely by way of example, with reference to the accompanying drawings, in which:
The apparatus also has a raised portion 7 which, in use, extends around the periphery of the disk so as to limit the scope for movement of the disk within its own plane and, whilst the disk is held on the apparatus, to inhibit access to the periphery of the disk. A step 8 is provided on the inner edge of the raised portion 7. The arrangement is such that, to release a disk held on the apparatus, it is necessary to depress the button-like portion. This causes the projections 6 to depress the disk towards the base portion 1 until the periphery of the disk engages the step 8. Further depression of the button-like member causes the projections to depress the centre of the disk further towards the base portion, and so flex the disk, until the arms 2 have been depressed to such an extent that the projections 6 have moved inwardly a sufficient distance so as to disengage from the upper surface of the disk and are able to pass through the central aperture of the disk. The disk is then free to revert to an unstressed, flat shape so the centre of the disk “pops” up above the projection 6 and so that, when the button-like member is released, the projections 6 do not re-engage the disk. The operation of the disk-engaging means and the use of disk flexing to help eject the disk in this manner are described further in WO-A-96/14636 and WO-A-97/41563.
One difference between the apparatus shown in
The projection 10 may comprise a narrow ridge extending laterally across the underside of each arm 2 and projecting from the underside thereof by a distance of 0.5-1.0 mm, and preferably about 0.75 mm.
When the innermost portions of the arms 2 flex and/or pivot about the second pivot 10, the projections 6 move inwardly more rapidly for a given depression of the button-like member than when the arms flex and/or pivot about the first pivot 9. Accordingly, the apparatus retains the advantages of the apparatus described in WO-A-96/14636 and WO-A-97/41563 but the thickness T of the device, i.e. the distance between the upper surface of the triangular portion 4 (in its undepressed state) and the underside of the base portion 1, can be reduced. This thickness dimension T is shown in FIG. 3.
Known devices made in accordance with WO-A-96/14636 and WO-A-97/41563 have been made with a thickness in the range 4.3-7 mm. By using the features described in the present specification, the thickness T can be reduced to 4 mm or less and, preferably, to 3 mm or less. In the example illustrated in
As indicated above,
In the arrangement shown, it is also found that further depression of the button 4 in the position shown in
As will be appreciated from
The pivoting movement about the first pivot 9 may also be enhanced by the use of a shorter arm 2 which, in the position shown in
The projection 10 preferably projects from the underside of the arms 2 by a distance in the range 0.5 mm-1.0 mm.
These features, either individually or together, thus help ensure the disk is “cleanly” released when the button 4 is depressed even though the apparatus has a thickness T of less than 3 mm.
Each of the arms 2A in the embodiment shown in
A number of other changes can be made to the apparatus to help reduce the thickness of the apparatus and are described below.
The scope for downward movement of the centre of the disk 11 can be increased, without increasing the thickness T of the apparatus, by reducing the thickness of the central area of the base portion 1. Thus, the thickness of the base portion may be tapered so it reduces in a radially inward direction from the step 8 to a region at a radius of about 7.5 mm from the centre of the device. Indeed, the base portion may taper gradually from a thickness of about 1.0 mm adjacent the periphery of the disk to a thickness of about 0.7 mm adjacent the periphery of the central aperture of the disk, without the need for an abrupt change of thickness to provide the step 8. Making the central area of the base portion thinner than the outer areas thereof also tends to encourage the base portion to flex so the outer areas thereof rise when the button 3 is depressed.
The thickness T of the apparatus can also be reduced by adjusting the length of the arms 2,2A the size of the projections 6,6A and the thickness of the button 3,3A.
The projections 6,6A move inwards more rapidly if the distance between the projections 6,6A and the first pivot 9,9A is reduced. In the arrangement shown, the first pivot 9,9A is preferably 15 mm or less from the centre of the apparatus but more preferably 12.5 mm or less therefrom. The second pivot means 10,10A is preferably at least 3 mm and most preferably at least 5 mm radially inward of the first pivot means 9,9A.
If the overlap between the projections 6,6A and the upper surface of the disk 11 (in the undepressed state) is reduced, the projections 6,6A will need to move inwardly a smaller distance to release their engagement on the upper surface of the disk 11. On the other hand, the overlap should be sufficient to provide positive retention of the disk (and to allow for minor variations in the radius of the aperture of different disks). The projections 6,6A preferably overlap the upper surface of the disk 11 (with the apparatus in the undepressed state) by 0.5 mm or less, and preferably 0.4 mm or less, but the minimum overlap is preferably 0.2 mm.
The button 3,3A is preferably flat and preferably has a thickness of 0.6 mm or less and most preferably 0.4 mm or less. However, it should preferably have a minimum thickness of about 0.2 mm otherwise, the projections 6,6A may become too weak or flexible.
As indicated above, there are several features which assist in ejecting the disk so that it ‘pops up’ when released from the engagement by the lips 6 and is not re-engaged thereby when the button 3 is released: flexing of the centre of the disk downwards causes the centre of the disk to rise again once the engagement of the lips is released; during this reversion of the disk to its unflexed state, the centre of the disk may rise past its initial position (shown in
In some embodiments, all these factors may contribute to ejection of the disk. However, as the thickness of the apparatus is reduced (described further below), the movement caused by the upward flexing of outer portions of the base portion may change from merely assisting in ejection of the disk to becoming of equal importance to the ejection caused by flexing of the disk and, in some cases, flexing of the base portion may be essential to ensure satisfactory ejection of the disk.
The features described above thus enable the thickness of the apparatus to be reduced. This is an advantage as there is a desire to produce slimmer packaging to enable more disks to be stored in a given space. However, it will be appreciated that the features described may also be used to improve the functioning of the apparatus without necessarily reducing the thickness thereof.
As described in WO-A-96/14636 and WO-A-97/41563, the raised portion or upstand 7 surrounds or partially surrounds the periphery of the disk so as to inhibit access to the edge of a disk held on the apparatus by a user's finger until the disk is released from the disk-engaging means 3,3A. This deters users from attempting to remove the disk by lifting the edge of the disk and encourages them to release the disk by operating the disk-engaging means.
Parts of the raised portion or upstand 7 may be of reduced height to facilitate access to the edge of the disk once it has been released from the disk-engaging means.
The apparatus is preferably arranged so it can be manufactured by a one-shot injection moulding process. In particular, apertures are provided in the arms 2,2A to enable the projections or lips 6,6A to be formed during such a process.
The apparatus may be integrally formed as part of a wall of a container or box and, in this case, is typically formed of an amorphous plastics material such as polyethylene. However, the apparatus may also be formed as a tray for insertion in a separate container, or for mounting in a cover or sleeve in which case it is typically formed of a crystalline plastics material such as polystyrene or a co-polymer of polystyrene and butadiene. Such a tray may also be provided with a removable cover or film.
The apparatus shown in
As indicated above, the apparatus is designed so that it can be made with a thickness T of 4 mm or less and preferably 3 mm or less. In the latter case, the apparatus e.g. when in the form of a tray as shown in
Farrar, Peter Antony, Fraser, Anthony Henry Joseph, Pijanowski, Stefan Alexander
Patent | Priority | Assignee | Title |
6938760, | Oct 31 2003 | Disk positioning structure for a disk case | |
7260962, | Jul 31 2000 | Autronics Plastics Inc. | Case with internal lock |
7341143, | Aug 28 2004 | Storage device for disk media with a cylinder closing means | |
7610782, | Feb 07 2003 | Viva Onetime Limited | Lockable container having an integral and internal locking mechanism and methods of use |
7942261, | Feb 07 2005 | Atlas AGI Holdings, LLC | Multi-disc media case |
D525069, | Nov 21 2003 | Dubois Limited | Box for compact discs |
D532989, | Apr 26 2005 | Atlas AGI Holdings, LLC | Retaining device for a media disc |
D544743, | Sep 26 2005 | Autronic Plastics, Inc.; AUTRONIC PLASTICS, INC | Media storage case |
Patent | Priority | Assignee | Title |
5251750, | Apr 22 1992 | Paul J., Gelardi | Molded CD tray and pop up rosette therefor |
5586651, | Jul 14 1994 | AWM Mold Tech AG | Disk holder in a CD box |
5685427, | May 03 1996 | PARAMOUNT PAPER & PACKAGING, INC ; UPI PACKAGING FORMERLY KNOWN AS ULTRAPAC, INC | Holder for removably supporting a compact disk |
5788068, | Nov 03 1994 | Atlas AGI Holdings, LLC | Apparatus for holding a compact disk |
5887713, | Oct 26 1995 | PARAMOUNT PAPER & PACKAGING, INC ; UPI PACKAGING FORMERLY KNOWN AS ULTRAPAC, INC | Holder for compact discs |
5944181, | Sep 09 1998 | Finest Industrial Co., Ltd. | Disk protective enclosure |
6041923, | Apr 15 1998 | CD ejector device | |
6170656, | Feb 17 1998 | MAGNETIC IMATGE, S A | Case for digital video discs, compact discs and the like with improved disc hold and release device |
6196384, | Apr 11 1998 | AUTRONIC PLASTICS, INC | Storage container for recorded media |
6206186, | Nov 20 1997 | Case for compact discs, digital video disks or the like | |
6237763, | May 11 2000 | FINEST INDUSTRIAL CO , LTD | Disk protection enclosure |
6523683, | Dec 05 1997 | Dubois Limited | Enclosure holding data carrier |
GB2312665, | |||
JP50501082, | |||
WO9741563, |
Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
Sep 18 2001 | Dubois, Ltd. | (assignment on the face of the patent) | / | |||
Dec 18 2001 | FRASER, ANTHONY H J | Dubois Limited | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 014780 | /0203 | |
Dec 18 2001 | FRASER, ANTHONY H J | Westvaco Corporation | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 012606 | /0189 | |
Dec 20 2001 | PIJANOWSKI, STEFAN A | Westvaco Corporation | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 012606 | /0189 | |
Dec 20 2001 | PIJANOWSKI, STEFAN A | Dubois Limited | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 014780 | /0203 | |
Jan 07 2002 | FARRAR, PETER A | Westvaco Corporation | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 012606 | /0189 | |
Jan 07 2002 | FARRAR, PETER A | Dubois Limited | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 014780 | /0203 | |
Aug 23 2004 | MeadWestvaco Corporation | DUBOIS, LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 015027 | /0659 | |
Nov 04 2010 | Dubois Limited | RBS BUSINESS CAPITAL, A DIVISION OF RBS ASSET FINANCE, INC | SECURITY AGREEMENT | 025641 | /0617 | |
Nov 04 2010 | Dubois Limited | RBS INVOICE FINANCE LIMITED | SECURITY AGREEMENT | 026271 | /0843 |
Date | Maintenance Fee Events |
Sep 08 2008 | M1551: Payment of Maintenance Fee, 4th Year, Large Entity. |
Sep 15 2008 | REM: Maintenance Fee Reminder Mailed. |
May 25 2012 | ASPN: Payor Number Assigned. |
May 25 2012 | RMPN: Payer Number De-assigned. |
Sep 10 2012 | M1552: Payment of Maintenance Fee, 8th Year, Large Entity. |
Sep 08 2016 | M1553: Payment of Maintenance Fee, 12th Year, Large Entity. |
Date | Maintenance Schedule |
Mar 08 2008 | 4 years fee payment window open |
Sep 08 2008 | 6 months grace period start (w surcharge) |
Mar 08 2009 | patent expiry (for year 4) |
Mar 08 2011 | 2 years to revive unintentionally abandoned end. (for year 4) |
Mar 08 2012 | 8 years fee payment window open |
Sep 08 2012 | 6 months grace period start (w surcharge) |
Mar 08 2013 | patent expiry (for year 8) |
Mar 08 2015 | 2 years to revive unintentionally abandoned end. (for year 8) |
Mar 08 2016 | 12 years fee payment window open |
Sep 08 2016 | 6 months grace period start (w surcharge) |
Mar 08 2017 | patent expiry (for year 12) |
Mar 08 2019 | 2 years to revive unintentionally abandoned end. (for year 12) |